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Numerical investigation and design of cold-formed steel built-up open section columns with longitudinal stiffeners

机译:带有纵向加劲肋的冷弯型钢组合式开放型截面柱的数值研究与设计

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A built-up I-section with longitudinal stiffeners is expected to have better performance to resist against local and distortional buckling compared to conventional built-up I-section by simply connecting two plain channels back-to-back. This paper presents a non-linear finite element analysis to investigate the behaviour of cold-formed steel built-up open section columns with edge and web stiffeners. A finite element model was firstly developed and verified against tests of cold-formed steel built-up compression members, in which the initial geometric imperfections and material properties of the test specimens were included. Secondly, the verified finite element model was used for an extensive parametric study of fixed-ended cold-formed steel built-up open section columns. The parametric study was designed to investigate the effect of edge and web stiffeners in the built-up open sections. The finite element results together with the test results were compared with the design predictions calculated from the current design rules in the North American Specification and the Australian/New Zealand Standard. Furthermore, design rules of the current direct strength method were modified. It is shown that the design strengths predicted by the modified direct strength method are generally in good agreement with the ultimate loads of the built-up open section columns. In addition, the current design rules and the modified direct strength method were evaluated by reliability analysis. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过简单地背对背连接两个普通通道,与传统的组合式I型截面相比,带有纵向加劲肋的组合式I型截面有望具有更好的抵抗局部和变形屈曲的性能。本文提出了一种非线性有限元分析方法,以研究带有边缘和腹板加劲肋的冷弯型钢组合截面的性能。首先建立了有限元模型,并通过冷成型钢组合压缩构件的测试进行了验证,其中包括了初始几何缺陷和试样的材料性能。其次,将经过验证的有限元模型用于固定端冷弯型钢组合式开放型截面柱的广泛参数研究。该参数研究旨在研究边缘和腹板加劲肋在已建成的开放区域中的影响。将有限元结果和测试结果与根据北美规范和澳大利亚/新西兰标准中的当前设计规则计算出的设计预测进行比较。此外,修改了当前直接强度法的设计规则。结果表明,用改进的直接强度法预测的设计强度通常与组合式开放截面柱的极限载荷非常一致。此外,通过可靠性分析评估了当前的设计规则和改进的直接强度方法。 (C)2014 Elsevier Ltd.保留所有权利。

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